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Rational Design of High-Number dsDNA Fragments Based on Thermodynamics for the Construction of Full-Length Genes in a Single Reaction

机译:基于热力学的双链DNA片段的合理设计,可在单个反应中构建全长基因

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摘要

Gene synthesis is frequently used in modern molecular biology research either to create novel genes or to obtain natural genes when the synthesis approach is more flexible and reliable than cloning. DNA chemical synthesis has limits on both its length and yield, thus full-length genes have to be hierarchically constructed from synthesized DNA fragments. Gibson Assembly and its derivatives are the simplest methods to assemble multiple double-stranded DNA fragments. Currently, up to 12 dsDNA fragments can be assembled at once with Gibson Assembly according to its vendor. In practice, the number of dsDNA fragments that can be assembled in a single reaction are much lower. We have developed a rational design method for gene construction that allows high-number dsDNA fragments to be assembled into full-length genes in a single reaction. Using this new design method and a modified version of the Gibson Assembly protocol, we have assembled 3 different genes from up to 45 dsDNA fragments at once. Our design method uses the thermodynamic analysis software Picky that identifies all unique junctions in a gene where consecutive DNA fragments are specifically made to connect to each other. Our novel method is generally applicable to most gene sequences, and can improve both the efficiency and cost of gene assembly.
机译:当合成方法比克隆方法更灵活,更可靠时,现代分子生物学研究中经常使用基因合成来创建新基因或获得天然基因。 DNA化学合成在长度和产量上都有局限性,因此必须从合成的DNA片段中层次构建全长基因。吉布森组装及其衍生物是组装多个双链DNA片段的最简单方法。目前,根据其供应商的意见,可以使用Gibson Assembly一次组装多达12个dsDNA片段。实际上,可以在单个反应中组装的dsDNA片段的数量要少得多。我们已经开发出一种合理的基因构建设计方法,该方法可以在单个反应中将大量dsDNA片段组装成全长基因。使用这种新的设计方法和Gibson Assembly协议的修改版本,我们一次从多达45个dsDNA片段中组装了3个不同的基因。我们的设计方法使用热力学分析软件Picky,该软件可识别基因中所有独特的连接点,在这些连接点上专门制造了连续的DNA片段以相互连接。我们的新方法通常适用于大多数基因序列,并且可以提高基因组装的效率和成本。

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